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Effects of pH, temperature and solids loading on microbial community structure during batch culture on a polymetallic ore.

机译:pH,温度和固体加载对多种矿石批量培养过程中微生物群落结构的影响。

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The bioleaching of an organic-rich polymetallic ore was conducted under conditions intended to probe the boundaries of microbial activity using iron and sulfur oxidising microorganisms and heterotrophs enriched from self-heating pyritic coal. Solution chemistry parameters such as rapidly increased ORP and reduction in pH subsequent to inoculation point to the development of active bacterial communities. The ease with which microbial communities adapted to the organic-rich ore and the bioleaching systems indicated that the organic compounds were not present in leachates at toxic levels. Overall, extractions obtained in three series of inoculated tests were at 35°C: 79-96% Zn, 48-82% Cu, 47-55% Ni and 79-86% Co; at 55°C: 96-97% Zn, 72-80% Cu, 46-50% Ni and 82-83% Co. T-RFLP provided semi-quantitative estimates of species abundance. The greatest microbial: complexity was observed with moderate pH and low solids loading. Microbial complexity was reduced significantly by low pH or increased solids loading. Nevertheless, efficient bioleaching was observed over a relatively wide range of operating conditions. Even under the more extreme conditions, the community profile was dominated by combinations of organisms not typically seen in most commercial operations.
机译:在使用氧化铁和硫氧化微生物和富含自加热氢煤的杂种体的条件下进行有机富含聚合物矿石的生物浸出。溶液化学参数如迅速增加ORP和接种点随后对活性细菌社区的发育后的pH降低。微生物社区适用于有机矿石和生物浸入系统的易于表明有机化合物在毒水层中不存在于毒液中。总体而言,在三次系列接种试验中获得的提取为35℃:79-96%Zn,48-82%Cu,47-55%Ni和79-86%Co;在55°C:96-97%Zn,72-80%Cu,46-50%Ni和82-83%Co.T-RFLP提供了物种丰富的半定量估计。使用中等pH和低固体载荷观察到最大的微生物:复杂性。通过低pH或增加的固体载荷显着降低微生物复杂性。然而,在相对宽范围的操作条件下观察到有效的生物浸出。即使在更极端的条件下,社区概况也是由通常在大多数商业运营中所看到的生物组合的主导。

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